GMW GMW16977-2013 Acoustic Absorbing Material for Exhaust Applications Issue 1 English [Replaced GMNA GMN10027 GMNA GMN10027 GMNA GMN10027 GMNA GMN10027].pdf
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1、 WORLDWIDE ENGINEERING STANDARDS Material Specification GMW16977 Acoustic Absorbing Material for Exhaust Applications Copyright 2013 General Motors Company All Rights Reserved June 2013 Page 1 of 11 1 Scope This specification defines fibrous glass materials used as acoustic-absorbing and thermal ins
2、ulation media primarily used in automotive exhaust applications. The specification includes properties, both chemical and physical, required for moderate-, intermediate-, and high-temperature applications in exhaust systems. 1.1 Material Description. This specification describes three (3) types of f
3、ibrous glass materials typically used in silencer components of exhaust systems. The materials are classified as Type 1 for moderate-temperature applications, Type 2 for high-temperature applications and Type 3 for intermediate-temperature applications. These materials are utilized in environments w
4、here they will be exposed to hot exhaust gases, but the primary flow of the exhaust gasses is not normally through the mass of glass fibers. The fibers provide a mechanism for the dissipation of acoustic energy as well as providing thermal insulation around the path of the exhaust gases. 1.1.1 Mater
5、ial Identification. Type 1, or moderate-temperature applications, are those applications where the fibrous material itself will achieve continuous operating temperatures of 730 C or intermittent temperatures as high as 825 C for up to 2 h. Thus, this material should be suitable for virtually all app
6、lications toward the rear of the exhaust system and many applications near the catalytic converter, either alone or in combination with a high-temperature material adjacent to the perforated tube. Type 2, or high temperature applications, are those applications where the fibrous material itself will
7、 achieve continuous operating temperatures of 825 C or intermittent temperatures as high as 900 C for up to 2 h. This material is suitable for virtually all applications toward the rear of the exhaust system and near the catalytic converter. Type 3, or intermediate-temperature applications, are thos
8、e applications where the fibrous material itself will achieve continuous operating temperatures of 810 C or intermittent temperatures as high as 890 C for up to 2 h. This material is suitable for virtually all applications toward the rear of the exhaust system and most applications near the catalyti
9、c converter. Note: For many silencer applications in continuous operation, the glass temperature adjacent to the perforation tube is 50 C below the exhaust gas temperature. For cyclic operations of a few minutes duration, this temperature differential is larger. 1.2 Symbols. Not applicable. 1.3 Typi
10、cal Applications. These materials are typically used in exhaust systems where thermal insulation and/or acoustic attenuation are required. The choice of materials is primarily determined by the maximum operating temperature that the material will achieve. 1.4 Remarks. Not applicable. 2 References No
11、te: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/Specifications. ASTM C336 ASTM E1050 2.2 GM Standards/Specifications. GMW3059 GMW3205 Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo re
12、production or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW16977 Copyright 2013 General Motors Company All Rights Reserved June 2013 Page 2 of 11 2.3 Additional References. TMC003 Material Safety Data Sheet guidance documents (available at ). 3 Requirements
13、 3.1 Performance Requirements. The Type 1 moderate-temperature fiberglass rovings (containing about 4000 individual filaments), Type 2 high-temperature fiberglass rovings (containing about 1850 individual filaments), and the Type 3 intermediate-temperature fiberglass rovings (containing about 4000 i
14、ndividual filaments) are put through a process (texturizing) which separates them into individual filaments and groups of a few dozen filaments before they are placed into a silencer. The ability to separate the strand into filaments is required for the silencer to achieve the desired acoustic perfo
15、rmance. 3.2 Chemical Requirements. The compositions of the three (3) types of glasses are shown in Table 1. Table 1: Composition of Glass Fibers in Weight Percent (wt%) Chemical Constituent Type 1 Moderate Temperature Type 2 High Temperature Type 3 Intermediate Temperature SiO2 55 to 65 62 to 69 62
16、to 69 CaO 18 to 25 720 C as determined by ASTM C336. The Type 2 high-temperature glass must have an annealing point 810 C as determined by ASTM C336. The Type 3 intermediate-temperature glass must have an annealing point 790 C as determined by ASTM C336. 3.2.3 Phase Stability Requirements. The Type
17、1 moderate-temperature material must remain amorphous when heat-treated for 24 h at a temperature of 860 C. The Type 2 high-temperature material must remain amorphous when heat-treated for 24 h at a temperature of 925 C. The Type 3 intermediate-temperature material must remain amorphous when heat-tr
18、eated for 24 h at 920 C. 3.2.4 Requirements for Preforms and Bag Materials. For initial material qualification approval only, the bag or preform shall achieve a rating of six (6) minimum when tested to GMW3205 Code C modified at a minimum temperature of 400 C. 3.2.4.1 Requirements for Low Emission P
19、reforms. The Low Emission Preforms (also known as Preform LE) must present a mean Loss on Ignition (LOI) of 0.6% when tested according to the Loss on Ignition Test described in Appendix B. 3.3 Transmission Loss. The minimum transmission loss of a 100 mm thick sample of this material at various packi
20、ng densities after texturizing is shown in Table 2. The absorption coefficient is measured according ASTM E1050. Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE E
21、NGINEERING STANDARDS GMW16977 Copyright 2013 General Motors Company All Rights Reserved June 2013 Page 3 of 11 Table 2: Minimum Linear Absorption Coefficient of Absorptive Materials Frequency (Hz) 100 g/L 150 g/L 200 g/L 200 0.3 0.4 0.5 400 0.8 0.8 0.8 600 0.9 0.8 0.75 800 0.9 0.85 0.8 4 Manufacturi
22、ng Process Not applicable. 5 Rules and Regulations 5.1 Legal Regulations. All materials must satisfy applicable laws, rules, regulations and recommendations valid in the country of usage. 5.2 Language. In the event of conflict between the English and domestic language, the English language shall tak
23、e precedence. 5.3 Inspection and Rejection. Samples of components or materials released to a GM material specification shall be tested for conformity with the requirements of this material specification and approved by the responsible Engineering department prior to commencement of delivery of bulk
24、supplies. A new approval must be received for any changes, e.g., properties, manufacturing process, location of manufacture, etc. If not otherwise agreed, all testing and documentation normally required for initial release must be completed. It is the responsibility of the supplier to inform the cus
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